Response surface methodology based on Box-Behnken (BBD) design was successfully applied to the optimization in the operating conditions of the electrochemical oxidation of sanitary landfill leachate aimed for making this method feasible for scale up. Landfill leachate was treated in continuous batch-recirculation system, where a dimensional stable anode (DSA(©)) coated with Ti/TiO2 and RuO2 film oxide were used. The effects of three variables, current density (milliampere per square centimeter), time of treatment (minutes), and supporting electrolyte dosage (moles per liter) upon the total organic carbon removal were evaluated. Optimized conditions were obtained for the highest desirability at 244.11 mA/cm(2), 41.78 min, and 0.07 mol/L of N...
Leachate originating in landfills where municipal solid wastes are disposed is a wastewater with a c...
Landfill leachate normally contains organic and inorganic pollutants in high concentrations. Electro...
The electrochemical oxidation of stabilized landfill leachate with 2960 mg L(-1) chemical oxygen dem...
Response surface methodology based on Box-Behnken (BBD) design was successfully applied to the optim...
This research investigated the effectiveness of electrochemical treatment in treating semi-aerobic l...
Abstract Treatment of landfill leachate wastewater by electrocoagulation process using an aluminium ...
Abstract: Electrochemical methods can offer an elegant contribution towards environmental control as...
Sanitary landfills are the major method used today for the disposal and management of municipal soli...
Introduction: Chemical Oxidation Demand (COD) is an important parameter in treatment of leachate. Le...
The optimization of the electrochemical step in a combined (biological and electro-oxidative) landfi...
This study was conducted to develop a two-stage process of UASB and electrochemical oxidation for th...
This paper examines the efficiency of electro-oxidation used as the single pretreatment of landfill ...
In this paper, the anodic oxidation of a real leachate from an old municipal solid waste landfill ha...
International audienceThis study focused on electrocoagulation treatment of leachate effluent using ...
This paper examines the efficiency of electro-oxidation used as the single pretreatment of landfill ...
Leachate originating in landfills where municipal solid wastes are disposed is a wastewater with a c...
Landfill leachate normally contains organic and inorganic pollutants in high concentrations. Electro...
The electrochemical oxidation of stabilized landfill leachate with 2960 mg L(-1) chemical oxygen dem...
Response surface methodology based on Box-Behnken (BBD) design was successfully applied to the optim...
This research investigated the effectiveness of electrochemical treatment in treating semi-aerobic l...
Abstract Treatment of landfill leachate wastewater by electrocoagulation process using an aluminium ...
Abstract: Electrochemical methods can offer an elegant contribution towards environmental control as...
Sanitary landfills are the major method used today for the disposal and management of municipal soli...
Introduction: Chemical Oxidation Demand (COD) is an important parameter in treatment of leachate. Le...
The optimization of the electrochemical step in a combined (biological and electro-oxidative) landfi...
This study was conducted to develop a two-stage process of UASB and electrochemical oxidation for th...
This paper examines the efficiency of electro-oxidation used as the single pretreatment of landfill ...
In this paper, the anodic oxidation of a real leachate from an old municipal solid waste landfill ha...
International audienceThis study focused on electrocoagulation treatment of leachate effluent using ...
This paper examines the efficiency of electro-oxidation used as the single pretreatment of landfill ...
Leachate originating in landfills where municipal solid wastes are disposed is a wastewater with a c...
Landfill leachate normally contains organic and inorganic pollutants in high concentrations. Electro...
The electrochemical oxidation of stabilized landfill leachate with 2960 mg L(-1) chemical oxygen dem...